Length-dependent thermopower of highly conducting Au–C bonded single molecule junctions
Widawsky JR, Chen W, Vázquez H, Kim T, Breslow R, Hybertsen MS, Venkataraman L. 2013. Length-dependent thermopower of highly conducting Au–C bonded single molecule junctions. Nano Letters. 13(6), 2889–2894.
Download
No fulltext has been uploaded. References only!
Journal Article
| Published
| English
Scopus indexed
Author
Widawsky, J. R.;
Chen, W.;
Vázquez, H.;
Kim, T.;
Breslow, R.;
Hybertsen, M. S.;
Venkataraman, LathaISTA
Abstract
We report the simultaneous measurement of conductance and thermopower of highly conducting single-molecule junctions using a scanning tunneling microscope-based break-junction setup. We start with molecular backbones (alkanes and oligophenyls) terminated with trimethyltin end groups that cleave off in situ to create junctions where terminal carbons are covalently bonded to the Au electrodes. We apply a thermal gradient across these junctions and measure their conductance and thermopower. Because of the electronic properties of the highly conducting Au–C links, the thermoelectric properties and power factor are very high. Our results show that the molecular thermopower increases nonlinearly with the molecular length while conductance decreases exponentially with increasing molecular length. Density functional theory calculations show that a gateway state representing the Au–C covalent bond plays a key role in the conductance. With this as input, we analyze a series of simplified models and show that a tight-binding model that explicitly includes the gateway states and the molecular backbone states accurately captures the experimentally measured conductance and thermopower trends.
Publishing Year
Date Published
2013-05-17
Journal Title
Nano Letters
Publisher
American Chemical Society
Volume
13
Issue
6
Page
2889-2894
ISSN
eISSN
IST-REx-ID
Cite this
Widawsky JR, Chen W, Vázquez H, et al. Length-dependent thermopower of highly conducting Au–C bonded single molecule junctions. Nano Letters. 2013;13(6):2889-2894. doi:10.1021/nl4012276
Widawsky, J. R., Chen, W., Vázquez, H., Kim, T., Breslow, R., Hybertsen, M. S., & Venkataraman, L. (2013). Length-dependent thermopower of highly conducting Au–C bonded single molecule junctions. Nano Letters. American Chemical Society. https://doi.org/10.1021/nl4012276
Widawsky, J. R., W. Chen, H. Vázquez, T. Kim, R. Breslow, M. S. Hybertsen, and Latha Venkataraman. “Length-Dependent Thermopower of Highly Conducting Au–C Bonded Single Molecule Junctions.” Nano Letters. American Chemical Society, 2013. https://doi.org/10.1021/nl4012276.
J. R. Widawsky et al., “Length-dependent thermopower of highly conducting Au–C bonded single molecule junctions,” Nano Letters, vol. 13, no. 6. American Chemical Society, pp. 2889–2894, 2013.
Widawsky JR, Chen W, Vázquez H, Kim T, Breslow R, Hybertsen MS, Venkataraman L. 2013. Length-dependent thermopower of highly conducting Au–C bonded single molecule junctions. Nano Letters. 13(6), 2889–2894.
Widawsky, J. R., et al. “Length-Dependent Thermopower of Highly Conducting Au–C Bonded Single Molecule Junctions.” Nano Letters, vol. 13, no. 6, American Chemical Society, 2013, pp. 2889–94, doi:10.1021/nl4012276.
Export
Marked PublicationsOpen Data ISTA Research Explorer
Sources
PMID: 23682792
PubMed | Europe PMC